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Identification of material properties of orthotropic composite plate using hybrid non-destructive evaluation approach

机译:基于混合无损评价的正交异性复合材料板材料性能鉴定

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摘要

Identification of material properties is one of the key issues in composite materials research. The mechanical properties of composite materials depend on diverse factors such as configuration of the laminates, constituent materials used and production method adopted. Conventional testing approach tends to be time-consuming, expensive and destructive. As an alternative, a rapid, inexpensive, hybrid and non-destructive evaluation approach which utilises experimental modal analysis and finite element analysis is proposed. Experimental modal data which consist of natural frequencies and mode shapes of an orthotropic composite plate are utilised for correlation purpose with its finite element model. This finite element model of the composite plate is continuously updated and achieves less than 5% in difference of natural frequencies and over 70% in modal assurance criterion. Material properties such as Young's moduli, inplane shear modulus and Poisson ratio of the composite plate are then successfully determined using the well-correlated FE model.
机译:材料特性的识别是复合材料研究的关键问题之一。复合材料的机械性能取决于多种因素,例如层压板的构造,使用的组成材料和采用的生产方法。传统的测试方法往往耗时,昂贵且具有破坏性。作为替代方案,提出了一种利用实验模态分析和有限元分析的快速,廉价,混合和无损评估方法。利用正交各向异性复合板的固有频率和模态形状组成的实验模态数据与其有限元模型进行关联。复合板的这种有限元模型会不断更新,其固有频率差异小于5%,而模态保证标准则大于70%。然后,使用相关性强的有限元模型成功地确定了复合板的材料性能,例如杨氏模量,面内剪切模量和泊松比。

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